Microscopic Phase-Locking and the Dynamics of Wavefunction Condensation: A Deterministic Resolution to the Quantum Measurement Problem / 微觀相位的自發鎖相與波函數凝結動力學:量子測量問題的確定性解答

Abstract

This paper (VII_002) resolves the long-standing Quantum Measurement Problem by proposing a deterministic, non-linear physical mechanism: Microscopic Phase-Locking and Wavefunction Condensation. Utilizing the Kuramoto Synchronization Model adapted for non-Hermitian open quantum systems, we demonstrate that wavefunction collapse is not a random projection, but a spontaneous topological phase transition driven by Universal Field of Intelligence (UFI) negentropic de-noising (Paper I_015). Operating within a background-independent framework that refutes the Internal Observer Fallacy (Paper I_001), superpositions condense into definite classical states when interaction strength exceeds critical coupling thresholds.

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Shun-Ching Lee
National Cheng Kung University (PhD)

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